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What Works Clearinghouse Rating
Peer reviewedGedeon, David V. – CoED, 1981
Describes a course to make technical managers more aware of computer technology and how data loggers, programmable controllers, and larger computer systems interact in a hierarchical configuration of manufacturing process control. (SK)
Descriptors: College Science, Computer Science, Computer Science Education, Course Descriptions
Peer reviewedKenney, C. N. – Chemical Engineering Education, 1980
Describes a course, including content, reading list, and presentation on chemical reactors at Cambridge University, England. A brief comparison of chemical engineering education between the United States and England is also given. (JN)
Descriptors: Chemical Industry, Chemical Reactions, Chemistry, College Science
Peer reviewedRobinson, Arthur L. – Science, 1980
Discusses the problem of the shortage of engineers capable of designing advanced integrated circuits (IC) and presents some suggestions for increasing the number of IC designers in universities and semiconductor companies. (HM)
Descriptors: Electric Circuits, Electronics Industry, Engineering Education, Engineering Technology
Peer reviewedFriedman, Edward A. – Liberal Education, 1979
The impact of technology on higher education from increasingly complex computers and technological systems will cause higher education to include technological courses in the liberal arts curriculum, prepare liberal arts students for careers in nontraditional areas in which technology is an important component, and broaden the base of engineering…
Descriptors: Curriculum, Curriculum Design, Curriculum Development, Educational Change
Peer reviewedFelder, Richard M.; Marsland, David B. – Chemical Engineering Education, 1979
Describes an undergraduate chemical engineering course which was designed at North Carolina State University to introduce the experimental side of chemical process technology. The course lectures, experiments, objectives, evaluation and information sources are also discussed. (HM)
Descriptors: Chemical Industry, Chemistry, College Science, Course Descriptions
Engineering Education, 1989
This volume includes 303 entries of programs on engineering and engineering technology; 239 entries on engineering programs, and 64 entries on engineering technology programs. The information includes the school name and address; school profile; admission information including student expenses and financial aid; graduation requirements; and…
Descriptors: College Admission, College Choice, College Instruction, College Programs
Stever, H. Guyford – Engineering Education, 1988
States that an expanding future in space requires new technology. Stresses that from engineering education, space requires people with a fundamental knowledge of modern science instruments, all engineering sciences, an appreciation and capability for detail and systems design, and an understanding of costs and competitiveness, machines, materials,…
Descriptors: Aerospace Education, College Science, Engineering, Engineering Education
Peer reviewedDodigovic, Marina – CALICO Journal, 1993
The properties of German as a special language of mechanical engineering are examined on the basis of a newly compiled corpus including samples from all important disciplines and discourse styles. The syntactic, semantic, and pragmatic aspects of passive voice are the chief research goal. (Contains five references.) (Author/LB)
Descriptors: Computer Assisted Instruction, Computer Software Development, Courseware, Engineering Education
Peer reviewedReed, John A.; Afjeh, Abdollah A. – Computers & Education, 1998
Illustrates the design and implementation of a Java applet for use in educational propulsion engineering curricula. The Java Gas Turbine Simulator applet provides an interactive graphical environment which allows the rapid, efficient construction and analysis of arbitrary gas turbine systems. The simulator can be easily accessed from the World…
Descriptors: Computer Graphics, Computer Simulation, Computer Software Development, Computer System Design
Bauer, P.; Rompelman, O. – European Journal of Engineering Education, 2005
Present engineering has to deal with increasingly complex systems. In particular, this is the case in electrical engineering. Though this is obvious in microelectronics, also in the field of power systems engineers have to design, operate and maintain highly complex systems such as power grids, energy converters and electrical drives. This is…
Descriptors: Animation, Engineering Education, Engineering, Engineering Technology
McCarthy, John; Moore, R. A. – European Journal of Engineering Education, 2006
The present paper focuses on the application of a structured template, maximum impact flow (MIF), in order to encourage young students in the area of optics and optical engineering. MIF introduces a template in terms of individual steps and linked functionality and is shown to fuse separate learning tools together into a cohesive unit.…
Descriptors: Engineering Education, Optics, Engineering, Engineering Technology
Creating a Bridge to Simulate Simultaneous Engineering Experiences for Senior Undergraduate Students
Otieno, Andrew; Azad, Abul; Balamuralikrishna, Radha – European Journal of Engineering Education, 2006
Launching new or improved products to the market typically involves extensive collaboration within and beyond the enterprise. Succeeding in a customer-driven market economy demands the practice of simultaneous engineering. The standard engineering or engineering technology curricula continue to make efforts in providing students with opportunities…
Descriptors: Undergraduate Students, Student Projects, Free Enterprise System, Cooperation
Morrison, Faith A. – Chemical Engineering Education, 2005
A need has emerged in the curriculum for more teamwork experience, for the development of better communication and critical thinking skills, and for the acquisition of specialized knowledge. A focus on the processes by which problems are solved has served our discipline well and can continue to serve us if in the classroom we make appropriate…
Descriptors: Engineering Education, Engineering Technology, Educational Practices, Educational Change
Davis, Richard A. – Chemical Engineering Education, 2005
Students designed and manufactured compact, shell-and-tube heat exchangers in a project-based learning exercise integrated with our heat transfer course. The heat exchangers were constructed from common building materials available at home improvement centers. The cost of materials for a device was less than $20. The project gave students…
Descriptors: Science Projects, Science Process Skills, Engineering Technology, Heat
Reilly, Patrick L. – 1986
Six state 2-year technical colleges in Georgia were seeking Accreditation Board of Engineering Technology (ABET) approval for a pilot seven-quarter electronic engineering technology program that culminates in an associate of sciences degree. A curriculum revision project that involved a modification of the Delphi technique and input from advisory…
Descriptors: Accreditation (Institutions), Advisory Committees, Associate Degrees, Curriculum Development

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